Wang Ziyue, Zhou Dongfang, Liu Qikun, Yan Mengyao, Wang Xian
Opt Express. 2023 Oct 23;31(22):35632-35643. doi: 10.1364/OE.497017.
The generation of multi-mode vortex beams at the same aperture is currently emerging as a research hotspot. In this paper, a method based on a linearly polarized-circularly polarized translational transmission metasurface (TM) is proposed to enable a dual-circularly polarized dual-mode vortex beam generation. Through the judicious implementation of an additional rotational phase and the combination of the initial transmission phase, the phases of the left-hand circularly polarized (LHCP) and right-hand circularly polarized (RHCP) waves can be manipulated arbitrarily and independently. Meanwhile, the design of the array phase is utilized for the dual-mode dual-circularly polarized beam generation. Simulation and sample measurements provide validation data for the feasibility of this method, in which the measurement results are in excellent consistency with the simulation ones. This proposed method paves the way toward the enhancement of the channel capacity of mobile communication.
目前,在同一孔径上产生多模涡旋光束正成为一个研究热点。本文提出了一种基于线偏振 - 圆偏振平移传输超表面(TM)的方法,以实现双圆偏振双模涡旋光束的产生。通过巧妙地施加额外的旋转相位并结合初始传输相位,可以任意且独立地操纵左旋圆偏振(LHCP)波和右旋圆偏振(RHCP)波的相位。同时,利用阵列相位设计来产生双模双圆偏振光束。仿真和样品测量为该方法的可行性提供了验证数据,其中测量结果与仿真结果具有极佳的一致性。该方法为提高移动通信的信道容量铺平了道路。